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Reconfigurable Antenna and Dynamic Spectrum Access Algorithm: Integration in a Cognitive Radio Platform for Reliable Communications

机译:可重构天线和动态频谱访问算法:集成在可靠通信的认知无线电平台中

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Wireless communications provide many advantages for industrial applications; however, some problems regarding the reliability of the link must be dealt (e.g. wideband interferers or multipath fading). Cognitive Radio and Dynamic Spectrum Access are two of the technologies that enable the implementation of reliable communications. In order to ensure the reliability of the communication link, it is necessary to carry out a complete change of the transmission band, and not only small in-band changes. Therefore it has to be ensured that the new chosen band is uncorrelated with respect to the previous one, in terms of coherence bandwidth and RF interference. When performing a change in the transmission band the update of some parameters in the digital domain of the cognitive-radio is not enough, but it also requires the adjustment of the analog part, where the antenna element plays an important role. On this basis, this paper presents the integration of a frequency reconfigurable antenna and a Dynamic Spectrum Access algorithm in an FPGA-based cognitive-radio platform for reliable communications. The reconfigurable antenna and the DSA algorithm, together with a commercial adjustable RF front-end, make the system capable of performing both in-band and dual-band channel change in the Industrial, Scientific and Medical (ISM) bands of 868 MHz and 2.45 GHz.
机译:无线通信为工业应用提供了许多优势。但是,必须解决一些有关链路可靠性的问题(例如宽带干扰或多径衰落)。认知无线电和动态频谱访问是使可靠通信得以实现的两项技术。为了确保通信链路的可靠性,不仅要进行小的带内变化,还必须对传输频带进行完全的变更。因此,就相干带宽和射频干扰而言,必须确保新选择的频段与前一个频段不相关。当改变传输频带时,认知无线电的数字域中某些参数的更新是不够的,但是还需要调整模拟部分,其中天线元件起着重要的作用。在此基础上,本文提出了在基于FPGA的认知无线电平台中实现可靠通信的频率可重构天线和动态频谱访问算法的集成。可重新配置的天线和DSA算法,以及可调节的商用射频前端,使该系统能够在868 MHz和2.45的工业,科学和医学(ISM)频带中执行带内和双带信道更改GHz。

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